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TNF receptor 1-dependent beta cell toxicity as an effector pathway in autoimmune diabetes

D Kägi1, A Ho, B Odermatt

  • 1Ontario Cancer Institute/Amgen Institute, Toronto, Canada. dkagi@amgen.com

Insights

Autoimmune diabetes progression in NOD mice was halted by removing TNF receptor 1 (TNFR1). This suggests TNFR1-dependent pathways, distinct from CD8+ T cell cytotoxicity, are crucial for beta cell destruction in autoimmune diabetes.

Area of Science:

  • Immunology
  • Endocrinology
  • Pathology

Background:

  • Autoimmune diabetes involves chronic inflammation and pancreatic beta cell loss.
  • Tumor necrosis factor (TNF) and lymphotoxin alpha are cytokines implicated in cell death.
  • The role of TNF receptor 1 (TNFR1) in autoimmune diabetes pathogenesis is not fully understood.

Purpose of the Study:

  • To investigate the involvement of TNFR1 in the development of autoimmune diabetes.
  • To elucidate the specific mechanisms by which TNFR1 signaling contributes to beta cell destruction.

Main Methods:

  • Generated nonobese diabetic (NOD) mice lacking TNFR1.
  • Conducted adoptive transfer experiments using spleen cells from diabetic NOD mice into recipient mice with varying TNFR1 status.
  • Utilized a CD8+ T cell-mediated diabetes model.

Main Results:

  • NOD mice deficient in TNFR1 showed normal insulitis but no progression to diabetes.
  • Absence of TNFR1 in recipients delayed diabetes induced by normal spleen cells and prevented it with perforin-deficient cells.
  • Diabetes induced by specific CD8+ T cells was not affected by TNFR1 deficiency in recipients.

Conclusions:

  • Two distinct diabetogenic mechanisms exist in autoimmune diabetes.
  • CD8+ T cells mediate beta cell lysis via perforin-dependent cytotoxicity.
  • CD4+ T cells, macrophages, and dendritic cells contribute to diabetes via TNFR1-dependent beta cell toxicity.

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